
onsemi (Nasdaq: ON), a leader in intelligent power and sensing technologies, today announced a new 10BASE-T1S Ethernet controller designed to provide reliable multi-point communication in industrial settings. The NCN26010 enables more than 40 nodes on a single twisted pair, exceeding five times the amount of nodes requested by the IEEE 802.3cg standard, to reduce installation cost and set-up complexity.
For in-cabinet wiring, the NCN26010 reduces wiring up to 70% while significantly increasing bandwidth. In backplanes, it simplifies the layout and power distribution without impacting data rates or latencies. Many applications, such as elevators, will be able to increase data throughput over existing wiring with the new device and, due to the ability to carry power over data cables, complex sensor networks can be built upon simple and low-cost cable runs.
“The NCN26010 enables multi-drop networks which reduces the total number of networks for large installations,” said Michel De Mey, vice president of the Industrial Solutions Division, onsemi. “Customers benefit from our solution being smaller and easier to integrate than previous controllers.”
The new controller implements multi-drop 10BASE-T1S (802.3cg) Ethernet that is an effective replacement for legacy point-to-point and multi-point industrial communication standards. The T1S MAC/PHY can replace RS-485, CAN, RS-232, HART and others. As a result, greater data throughput is achieved over existing wiring, eliminating the need to re-pull wires which is often the greatest expense in a networking installation.
Single-Pair Ethernet installations based upon the controller reduce the number, volume, and cost of wiring while the multi-drop capability allows for multiple nodes, such as sensors, to be connected to a single twisted pair. The NCN26010 also features a proprietary enhanced noise immunity feature which is essential for installations in electrically noisy industrial environments.
Additionally, the NCN26010 has lower capacitance on the line pins than existing T1S solutions which allows for more nodes to be implemented on a single network. As the communication with the NCN26010 can be over SPI, the pin count is lower and the package size is smaller. The NCN26010 is the industry’s first PHY + MAC controller for 10BASE-T1S and can connect to controllers, sensors and other devices without the need for an external MAC.
The NCN26010 and supporting development hardware are available now through onsemi sales support and authorized distributors.
All registered trademarks and other trademarks belong to their respective owners. For more details, please visit onsemi (ON) official site.
- IC MUX/DEMUX 8X1 16SOEIAJ
- DIODE ZENER 56V 225MW SOT23-3
- TVS DIODE 16VWM 47VC 2X2DFN
- IC GATE DRVR HALF-BRIDGE 14SOP
- TXRX 18BIT UNIV BUS LV 56TSSOP
- TRANS NPN 60V 2A 6WDFN
- MOSFET N-CH 120V 20A 8DLCOOL88
- IC GATE NAND 3CH 3-INP 14DIP
- TVS DIODE 17VWM 28VC SC70-3
- DIODE GEN PURP 1.5KV 6A TO220F
- IC INVERT SCHMITT 6CH 6-IN 14SOP
- TRANS NPN 100V 1A TO-220
- onsemi announced a trio of silicon carbide (SiC) based power modules in transfer molded technology
- onsemi introduced its new ecoSpin family of brushless DC (BLDC) motor controllers
- onsemi introduced an innovative dual-inductive rotary position sensor the NCS32100
- onsemi introduced EliteSiC as the name of its silicon carbide (SiC) family
- onsemi announced a long-term supply agreement (LTSA) with BMW AG
- onsemi announced the move of its headquarters from Phoenix to Scottsdale
- onsemi announced an ultra-low power automotive-grade wireless microcontroller with Bluetooth Low Ene
- onsemi announced the launch of a new, innovative image sensor – the AR0822
- onsemi announced a new range of ultra-efficient 1200 V insulated-gate bipolar transistors (IGBTs)
- onsemi announced a breakthrough in simulation tools for EliteSiC Silicon Carbide (SiC) product famil
- onsemi announced a new 10BASE-T1S Ethernet controller designed to provide reliable multi-point commu
- onsemi developed the customized high-end CMOS sensor for ARRI’s ALEXA 35 camera

















